Dynamic mechanisms of strengthening and softening of coherent twin boundary via dislocation pile-up and cross-slip

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Li, Zhipeng;Zhang, Jianfei;Zhai, Yadi;Zhang, Jiabao;Wang, Xiaodong;Zhang, Ze;Mao, Shengcheng;Han, Xiaodong

Description

Although cross-slip strongly affects the deformation of polycrystalline materials, the phenomenon is rarely studied in twinned face centered cubic (FCC) metals. Here we performed in-situ TEM nanoindentation on a twinned nickel bi-crystal. Multiple pile-ups were generated, with the first dislocations pinned at a coherent twin boundary (CTB) and multiple following dislocations cross-slipping within the matrix. Stress calculation revealed that the cross-slip events are made possible by the CTB, the first dislocations, and the favorable shear stress created jointly by external stress and dislocation interaction. These cross-slip events reduce tip stress and soften the material until inter-grain plasticity is eventually activated. IMPACT STATEMENT In-situ TEM nanoindentation reveals the characteristics of dislocation pinning, pile-ups and cross-slip along the twinning boundary in a twinned FCC metal for the first time.

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Metrics

Dataset Index

0.4

FAIR Score

15%

Citations

1

Mentions

0

Metrics Over Time

Publication Details

DOI

Publisher

Taylor & Francis

License

Creative Commons Attribution 4.0 International

Assigned Domain

Subfield

Materials Chemistry

Field

Materials Science

Domain

Physical Sciences

Confidence Score

39%

Source

Scholar Data Model

Keywords

Cell BiologyChemical Sciences not elsewhere classifiedBiological Sciences not elsewhere classifiedScience Policy

Normalization Factors

FT

50.00

CTw

1.00

MTw

1.00